典型文献
Bimetallic two-dimensional materials for electrocatalytic oxygen evolution
文献摘要:
Electrocatalytic oxygen evolution reaction(OER)is one of the important half reactions of electrocatalytic water splitting.However,the slow kinetic process involving four-electron transfer severely limits its re-action efficiency,which in turn limits the overall electrocatalytic hydrolysis efficiency.In order to im-prove the activity of the electrocatalytic OER,researchers mainly update the catalyst from three aspects,that is,increase the conductivity of the electrocatalyst,and the quantity and quality of active sites.Two-dimensional(2D)engineering can effectively reduce the resistance of the materials and greatly increase the number of electrochemically active sites,while heterometal doping,or the bimetal strategy,can im-prove the quality of active sites via changing the electronic structure of the material.Thus,the combina-tion of the two can enhance the activity of electrocatalytic OER in all three aspects:conductivity,number and quality of active sites.However,there is currently no review on this topic.Therefore,in this review,we summarize the application of bimetallic 2D materials in electrocatalytic OER from four aspects:the structure,synthesis strategy,catalytic efficiency,and reaction mechanism.
文献关键词:
中图分类号:
作者姓名:
Xiaojie Li;Qi Hu;Hengpan Yang;Tao Ma;Xiaoyan Chai;Chuanxin He
作者机构:
College of Chemistry and Environmental Engineering,Shenzhen University,Shenzhen 518060,China
文献出处:
引用格式:
[1]Xiaojie Li;Qi Hu;Hengpan Yang;Tao Ma;Xiaoyan Chai;Chuanxin He-.Bimetallic two-dimensional materials for electrocatalytic oxygen evolution)[J].中国化学快报(英文版),2022(08):3657-3671
A类:
heterometal
B类:
Bimetallic,two,dimensional,materials,electrocatalytic,oxygen,evolution,Electrocatalytic,OER,one,important,half,reactions,water,splitting,However,slow,kinetic,process,involving,four,transfer,severely,limits,efficiency,which,turn,overall,hydrolysis,In,order,prove,activity,researchers,mainly,update,from,three,aspects,that,increase,conductivity,electrocatalyst,quantity,quality,active,sites,Two,2D,engineering,can,effectively,reduce,resistance,greatly,number,electrochemically,while,doping,strategy,via,changing,electronic,structure,Thus,combina,enhance,there,currently,no,review,this,topic,Therefore,summarize,application,bimetallic,synthesis,mechanism
AB值:
0.48859
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